A scene mimicking multi-functional window
By designing a scene-mimicking multifunctional window, combined with a flexible screen and a speed reduction motor mechanism, the problem of windows being unable to simulate various scenarios and self-rescue under extreme flood conditions was solved. This enabled the conversion between display function and escape boat, ensuring user safety and privacy.
Patent Information
- Application Number
- CN202310789273.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-30
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2043-06-30
AI Technical Summary
Existing windows cannot simulate various scenarios, and lack stable vehicle rescue and self-rescue methods in extreme flood environments, threatening life safety.
A scene-mimicking multifunctional window was designed, which combines a flexible screen and a speed reduction motor mechanism. It can display multiple scenes under normal conditions and transform into an escape boat when floods occur, providing buoyancy and buffer protection.
It enables multi-functional displays on windows and conversion into escape pods, ensuring user safety and privacy, providing self-rescue methods in extreme environments, and reducing life-threatening situations.
Smart Images

Figure CN116816232B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of door and window equipment, and specifically to a scene-mimicking multifunctional window. Background Art
[0002] In recent years, with rising living standards and increased environmental awareness, villa construction has become a popular choice for an increasing number of people. As a symbol of luxury and comfort, villas require comprehensive design considerations, with window technology playing a crucial role in creating a livable environment. To achieve high thermal insulation and energy efficiency, the selection of window frames and glass materials is meticulously considered. Double or triple-layer laminated glass is typically used, with air or argon gas filling the gap to effectively reduce heat conduction. Window frames are constructed from materials such as high-density polyurethane foam or lightweight aluminum alloy, offering excellent thermal insulation. These materials provide excellent insulation in winter and protection against summer heat.
[0003] This type of villa window focuses on providing excellent natural lighting and views. To ensure optimal visibility, large panes of glass are typically used, filling the interior with light and providing a wide view. The window design considers the integration of indoor and outdoor environments and the appreciation of the landscape to meet the needs of residents. Adjustable shading and privacy protection are also incorporated into the design to meet residents' needs for flexible window use. Furthermore, the window design emphasizes the integration of ventilation systems to achieve indoor air circulation and improve the quality of the living environment.
[0004] As people pursue quality of life, the scenery outside the existing windows changes with the seasons during use, which cannot meet people's desired scenery outside the windows. For example, some people want to enjoy the scenery of other seasons in summer, or some people like to fall asleep on rainy nights. They can only use a projector to project the desired scene. The picture projected by the projector is different from the picture displayed directly on the window and cannot be equated.
[0005] While considering comfort, we must also take into account extreme environmental fluctuations. When experiencing heavy, prolonged, and intense rainfall, the water level in surrounding waters rises rapidly, exceeding normal capacity. City streets and buildings are submerged in floodwaters, resulting in property damage and threats to life. Without timely rescue and a stable vehicle for self-rescue, people can become trapped in the floodwaters. Further rises in water levels can directly threaten people's lives, creating an irreversible situation. Therefore, our company has initiated research on a scenario-mimicking multifunctional window. Summary of the Invention
[0006] The purpose of the present invention is to provide a scene mimicry multifunctional window to solve the technical problems in the above-mentioned background technology, namely, the existing windows do not have the ability to simulate multiple scenes at any time, and in the event of an extreme flood environment, there is no stable vehicle for rescue and self-rescue, threatening life.
[0007] A scene mimicry multifunctional window includes a rectangular frame, cylinder I, cylinder II, a PLC integrated module, a reduction motor mechanism, a remote control, and a power cord. The power cord is a 220V conventional power cord. The PLC integrated module is arranged inside cylinder I. A set of collars is respectively arranged on both sides of the rectangular frame. A set of annular grooves is respectively arranged on cylinder I and cylinder II. The collars are arranged in the annular grooves. Cylinder I and cylinder II rotate on both sides of the rectangular frame. It is characterized in that: strip-shaped slots I are arranged on both sides of the rectangular frame, and sealing strips are arranged on the strip-shaped slots I to provide sealing during the rotation of cylinder I and cylinder II. Alignment lines I and alignment lines II are arranged on both cylinder I and cylinder II. A set of positioning square tubes is embedded and installed on the tube wall of cylinder II. Cylinder II is a hollow cylinder. A reference line is arranged on the collar. A rotating shaft is arranged inside cylinder I. Bearing seals are arranged at both ends of the rotating shaft. A scroll screen is sleeved outside the rotating shaft, and one side of the scroll screen is fixed to the rotating shaft. A strip-shaped slot II is arranged on cylinder I. The wiring end of the scroll screen enters the inside of the rotating shaft and extends out of the rotating shaft. The wiring end of the PLC integrated module is connected to the wiring end of the scroll screen. A positioning mechanism is horizontally installed at one end of the rotating shaft. An open semi-cylindrical component is arranged on cylinder I. The reduction motor mechanism is installed in the open semi-cylindrical component. A backing plate is movably arranged in the open semi-cylindrical component. The bottom of the reduction motor mechanism is embedded and installed with the positioning mechanism. A pin hole is also arranged on the rectangular frame. A strip-shaped groove is arranged on cylinder II. Cylinder II presses the positioning mechanism through the strip-shaped groove, which is also convenient for installation and removal. An inner window I is embedded on the top surface of the rectangular frame. The rectangular frame and the inner window I are connected through a folding leather sleeve I. An inner window II is embedded on the bottom surface of the rectangular frame. Both the inner window I and the inner window II open inwards. First, open the inner window I and then open the inner window II. The rectangular frame and the inner window II are connected through a folding leather sleeve II. The unfolded area of the folding leather sleeve II is larger than the unfolded area of the folding leather sleeve I. A double-track groove is arranged inside the rectangular frame. Through the design, the device can form a sealed cavity after deformation.
[0008] The PLC integrated module includes a WiFi module I, a control main board, and a power supply and audio wiring port. The WiFi module I is arranged on the control main board. The Wi-Fi module, also known as a serial port Wi-Fi module, belongs to the Internet of Things transmission layer. Its function is to convert the serial port or TTL level into an embedded module that conforms to the Wi-Fi wireless network communication standard. It has built-in wireless network protocols IEEE802.11b.g.n protocol stack and TCP / IP protocol stack, and is an important part of realizing wireless smart home, M2M and other Internet of Things applications. The power supply and audio wiring port is arranged at the bottom of cylinder I and is sealed and connected between the two, and the connecting wire of the power supply and audio wiring port is connected to the control main board.
[0009] The speed reduction motor mechanism includes a mechanism housing, a rechargeable power source, a speed reduction motor, a WiFi module II, a receiving main board, a manual switch, a propeller, and an uncovered disc. The rechargeable power source is arranged inside the housing and can be recharged multiple times. Through the design, it is also convenient to take the speed reduction motor mechanism. The WiFi module II and the receiving main board are provided on the housing, and the manual switch is arranged on the housing. The speed reduction motor is fixedly arranged under the housing. A propeller and an uncovered disc are sleeved on the rotating shaft of the speed reduction motor. A group of vertical grooves are arranged on the inner wall of the uncovered disc, and one end of the vertical groove extends out of the uncovered disc. A positioning mechanism is installed in the vertical groove, and a group of L-shaped hanging plates are arranged on the mechanism housing.
[0010] The scroll screen assembly includes a scroll screen assembly, a transparent elastic scroll board, and an ultraviolet reflection coating. The side of the transparent elastic scroll board is fixedly connected to the side of the scroll screen assembly. The scroll screen is a flexible screen with a certain elasticity, and the back of the scroll screen assembly is coated with an ultraviolet reflection coating.
[0011] The positioning mechanism includes a double-ring limit tube, a single-round plate positioning pin, and a spring. The single-round plate positioning pins are installed oppositely inside the double-ring limit tube. The single-round plate positioning pins slide and are limited in the double-ring limit tube, and springs are arranged between the single-round plate positioning pins. <000'the double-ring limit tube, and springs are arranged between the single-round plate positioning pins.
[0012] The open semi-cylindrical component includes an arc plate I, an arc plate II, a round cover plate, and a positioning groove-shaped carrier plate. The arc plate II is arranged below the arc plate I, the round cover plate is arranged on the arc plate I, and the positioning groove-shaped carrier plate is horizontally installed on the inner wall of the arc plate I.
[0013] The technical effects and advantages of the present invention:
[0014] The present invention changes the traditional window. When the window has the functions of ventilation and light transmission, it also realizes the display function of the window. It combines the technologies of the window and the flexible screen. The flexible screen also has a certain elasticity, and the scroll screen adopts the flexible screen winding technology to be able to wind the screen into a chamber. In order to avoid the direct sunlight on the screen in summer, which causes the screen temperature to rise, a reflection coating is applied to the back of the scroll screen to reflect ultraviolet rays and prevent the screen temperature from rising. At the same time, it also has the function of protecting privacy when it is unfolded, becoming the first choice for many villas and self-built houses. Use a 220v conventional power cord and an audio cable to plug into the power audio connection port, and plug the 220v conventional power cord into the socket to connect the whole set of equipment to electricity. Operate the remote control, and the speed reduction motor mechanism drives the rotating shaft to rotate, so that the scroll screen assembly unfolds in the rectangular frame until it abuts against the strip groove of the cylinder II. The external mobile phone or tablet projects the picture on the mobile phone or tablet onto the scroll screen through the plc integrated module. The ultraviolet reflection coating on the back of the scroll screen can reflect ultraviolet rays and reduce the heat generation of the scroll screen. At this time, the whole set of equipment and the mobile phone or tablet are in the same network. Mirror the image on the tablet or mobile phone to the scroll screen assembly, and the desired scene can be simulated, and the sound is emitted from the speaker.
[0015] The present invention can be deformed into an escape boat with a storage cavity. When the flood is about to reach the lowest level of the window, open the inner window I, press the four corners of the frame of the inner window II respectively to unfold the folding leather sleeve II, then press the four corners of the frame of the inner window I respectively to unfold the folding leather sleeve I, and then close the inner window I to form a large cavity. Place some valuables inside for storage and at the same time form a sealed cavity to provide buoyancy. The sealing strip on the strip-shaped seam I plays a sealing role. Hammer the bricks around the window with a hammer and remove the entire window, which just falls on the water outside the house to form an escape boat with a chamber, floating on the water. People inside the house stand on the inner window I and press the manual switch in the speed reduction motor mechanism. The rolling screen assembly pops out. Hold the rolling screen with both hands and slowly pull out the rolling screen until it is close to the cylinder II and stop. Take out the speed reduction motor mechanism from the open semi-cylindrical component, hang the taken-out speed reduction motor mechanism in the positioning square tube, open the manual switch, and the speed reduction motor drives the propeller to slowly rotate to provide a forward thrust for the device itself. Further pull out the rolling screen, insert the rolling screen into the strip-shaped groove on the cylinder II, and at the same time, the single circular plate positioning pin just enters the pin hole of the rectangular body frame to form a limit, forming an arched rain shelter to prevent rainwater from directly entering the cavity. The two cylinders I and cylinder II can provide buoyancy and also prevent other objects from directly hitting the device body, serving as a buffer. The transparent elastic rolling plate can observe the environment ahead, and by sliding the water on the single side by hand, the direction can be changed, so as to reach the safe area and be quickly rescued, thus ensuring people's life safety in case of an emergency. BRIEF DESCRIPTION OF THE DRAWINGS [[ID=⑥]]
[0016] [[ID=⑦]] Figure 1 [[ID=⑧]]is the internal structure diagram of the present invention; [[ID=⑨]] [[ID=⑩]]
[0017] [[ID=⑪]] Figure 2 [[ID=⑫]]is the front view of the present invention; [[ID=⑬]] [[ID=⑭]]
[0018] [[ID=⑮]] Figure 3 [[ID=⑯]]is [[ID=⑰]] Figure 2 [[ID=⑱]]the partial enlarged view of part A of [[ID=⑲]] [[ID=⑳]]
[0019] [[ID=㉑]] Figure 4 [[ID=㉒]]is the rear view of the present invention; [[ID=㉓]] [[ID=㉔]]
[0020] [[ID=㉕]] Figure 5 [[ID=㉖]]is the partial internal structure diagram of the present invention; [[ID=㉗]] [[ID=㉘]]
[0021] [[ID=㉙]] Figure 6 [[ID=㉚]]is [[ID=㉛]] Figure 5 [[ID=㉜]]the partial enlarged view of part B of [[ID=㉝]] [[ID=㉞]]
[0022] [[ID=㉟]] Figure 7 [[ID=㊱]]is [[ID=㊲]] Figure 5 [[ID=㊳]]the partial enlarged view of part C of [[ID=㊴]]
[0023] Figure 8 Partial structural diagram of the present invention;
[0024] Figure 9 Stereogram of cylinder Ⅰ, rotating shaft and positioning mechanism of the present invention;
[0025] Figure 10 Stereogram of cylinder Ⅱ of the present invention;
[0026] Figure 11 For the present invention Figure 8 Side view;
[0027] Figure 12 Stereogram of the scroll screen assembly of the present invention
[0028] Figure 13 Internal structural diagram of part of the speed reduction motor mechanism of the present invention;
[0029] Figure 14 Stereogram of the open semi-cylindrical component and the positioning groove-shaped carrier plate of the present invention;
[0030] Figure 15 Stereogram of the positioning mechanism of the present invention;
[0031] Figure 16 Exploded stereogram of the parts of the positioning mechanism of the present invention;
[0032] Figure 17 Bottom view of the propeller of the present invention;
[0033] Figure 18 Diagram of the power cord and remote control component in the present invention;
[0034] Figure 19 Deformed hull structural diagram of the present invention;
[0035] Figure 20 Side view of the deformed hull of the present invention. Detailed implementation manners
[0036] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention. Embodiment 1
[0037] As Figure 1 - Figure 18As shown in the figure: A scene mimicking multi-functional window, including a rectangular frame 1, a cylinder Ⅰ 2, a cylinder Ⅱ 3, a plc integrated module 4, a reduction motor mechanism 5, a remote control and a power cord. The plc integrated module 4 is arranged inside the cylinder Ⅰ 2. A set of collar rings 6 are respectively arranged on both sides of the rectangular frame 1. A set of annular grooves 7 are respectively arranged on the cylinder Ⅰ 2 and the cylinder Ⅱ 3. The collar rings 6 are arranged inside the annular grooves 7. The cylinder Ⅰ 2 and the cylinder Ⅱ 3 rotate on both sides of the rectangular frame 1. It is characterized in that: Strip-shaped slots Ⅰ 8 are arranged on both side edges of the rectangular frame 1. A sealing strip 9 is arranged on the strip-shaped slots Ⅰ 8. Alignment lines Ⅰ 10 and alignment lines Ⅱ 11 are arranged on both the cylinder Ⅰ 2 and the cylinder Ⅱ 3. A set of positioning square tubes 12 are embedded and installed on the tube wall of the cylinder Ⅱ 3. The cylinder Ⅱ 3 is a hollow cylinder. A reference line 13 is arranged on the collar ring 6. A rotating shaft 14 is arranged inside the cylinder Ⅰ 2. Bearing seals 15 are arranged at both ends of the rotating shaft 14. A scroll screen assembly 16 is sleeved outside the rotating shaft 14 and one side of the scroll screen assembly 16 is fixed to the rotating shaft 14. A strip-shaped slot Ⅱ 17 is arranged on the cylinder Ⅰ 2. The wiring terminal of the scroll screen assembly 16 enters the inside of the rotating shaft 14 and extends out of the rotating shaft 14. The wiring terminal of the plc integrated module 4 is connected to the wiring terminal of the scroll screen assembly 16. A positioning mechanism 18 is horizontally installed at one end of the rotating shaft 14. An open semi-cylindrical component 19 is arranged on the cylinder Ⅰ 2. The reduction motor mechanism 5 is installed in the open semi-cylindrical component 19. A cushion plate 20 is movably arranged in the open semi-cylindrical component 19. The bottom of the reduction motor mechanism 5 is embedded and installed in the positioning mechanism 18. A pin hole 21 is also arranged on the rectangular frame 1. A strip-shaped groove 3-1 is arranged on the cylinder Ⅱ 3. An inner window Ⅰ 22 is embedded on the top surface of the rectangular frame 1. The rectangular frame 1 and the inner window Ⅰ 22 are connected by a folding leather sleeve Ⅰ 23. An inner window Ⅱ 24 is embedded on the bottom surface of the rectangular frame 1. The rectangular frame 1 and the inner window Ⅱ 24 are connected by a folding leather sleeve Ⅱ 25. The unfolded area of the folding leather sleeve Ⅱ 25 is larger than the unfolded area of the folding leather sleeve Ⅰ 23. A double track groove 26 is arranged inside the rectangular frame 1.
[0038] The plc integrated module 4 includes a WiFi module Ⅰ 27, a control main board 28 and a power supply and audio wiring port 29. The WiFi module Ⅰ 27 is arranged on the control main board 28. The power supply and audio wiring port 29 is arranged at the bottom of the cylinder Ⅰ 2 and is hermetically connected between the two. The connecting wire of the power supply and audio wiring port 29 is connected to the control main board 28.
[0039] The deceleration motor mechanism 5 includes a mechanism housing 30, a storage power supply 31, a deceleration motor 32, a WiFi module II 33, a receiving main board 34, a manual switch 35, a propeller 36, and an uncovered disc 37. The storage power supply 31, the WiFi module II 33, and the receiving main board 34 are arranged inside the housing 30. The manual switch 35 is arranged on the housing 30. The deceleration motor 32 is fixedly arranged under the housing 30. A propeller 36 and an uncovered disc 37 are sleeved on the rotating shaft of the deceleration motor 32. A group of vertical grooves 38 are arranged on the inner wall of the uncovered disc 37, and one end of the vertical groove 38 extends out of the uncovered disc 37. A positioning mechanism 18 is installed in the vertical groove 38. A group of L-shaped hanging plates 30-1 are arranged on the mechanism housing 30.
[0040] The scrolling screen assembly 16 includes a scrolling screen 16-1, a transparent elastic scroll plate 16-2, and an ultraviolet reflection coating 16-3. The side of the transparent elastic scroll plate 16-2 is fixedly connected to the side of the scrolling screen 16-1. The ultraviolet reflection coating 16-3 is coated on the back of the scrolling screen 16-1.
[0041] The positioning mechanism 18 includes a double-ring limit tube 39, a single-round plate positioning pin 40, and a spring 41. The single-round plate positioning pins 40 are oppositely installed in the double-ring limit tube 39. The single-round plate positioning pins 40 slide and are limited in the double-ring limit tube 39. Springs 41 are arranged between the single-round plate positioning pins 40.
[0042] The open semi-cylindrical component 19 includes an arc plate I 42, an arc plate II 43, a round cover plate 44, and a positioning groove-shaped carrier plate 45. The arc plate II 43 is arranged below the arc plate I 42. The round cover plate 44 is arranged on the arc plate I 42. The positioning groove-shaped carrier plate 45 is horizontally installed on the inner wall of the arc plate I 42.
[0043] The working principle of the daily light and normal window opening and ventilation of the present invention is as follows:
[0044] The whole device is installed in the wall. Light can pass through the inner opening window I 22 and the inner opening window II 24 and enter the room. When ventilation is required, first open the inner opening window I 22, and then open the inner opening window II 24. At this time, the whole window can be normally ventilated, which can meet the daily indoor air change of people. Embodiment 2
[0045] Such as Figure 1 - Figure 18As shown in the figure: A scene mimicking multi-functional window, including a rectangular frame 1, a cylinder Ⅰ 2, a cylinder Ⅱ 3, a plc integrated module 4, a reduction motor mechanism 5, a remote control, and a power cord. The plc integrated module 4 is arranged inside the cylinder Ⅰ 2. A set of collar rings 6 are respectively arranged on both sides of the rectangular frame 1. A set of annular grooves 7 are respectively arranged on the cylinder Ⅰ 2 and the cylinder Ⅱ 3. The collar rings 6 are arranged inside the annular grooves 7. The cylinder Ⅰ 2 and the cylinder Ⅱ 3 rotate on both sides of the rectangular frame 1. It is characterized in that: strip-shaped slots Ⅰ 8 are arranged on both sides of the rectangular frame 1, and sealing strips 9 are arranged on the strip-shaped slots Ⅰ 8. Alignment lines Ⅰ 10 and alignment lines Ⅱ 11 are arranged on both the cylinder Ⅰ 2 and the cylinder Ⅱ 3. A set of positioning square tubes 12 are embedded and installed on the tube wall of the cylinder Ⅱ 3. The cylinder Ⅱ 3 is a hollow cylinder. A reference line 13 is arranged on the collar ring 6. A rotating shaft 14 is arranged inside the cylinder Ⅰ 2. Bearing seals 15 are arranged at both ends of the rotating shaft 14. A scroll screen assembly 16 is sleeved outside the rotating shaft 14, and one side of the scroll screen assembly 16 is fixed to the rotating shaft 14. A strip-shaped slot Ⅱ 17 is arranged on the cylinder Ⅰ 2. The wiring terminal of the scroll screen assembly 16 enters the inside of the rotating shaft 14 and extends out of the rotating shaft 14. The wiring terminal of the plc integrated module 4 is connected to the wiring terminal of the scroll screen assembly 16. A positioning mechanism 18 is horizontally installed at one end of the rotating shaft 14. An open semi-cylindrical component 19 is arranged on the cylinder Ⅰ 2. The reduction motor mechanism 5 is installed in the open semi-cylindrical component 19. A backing plate 20 is movably arranged in the open semi-cylindrical component 19. The bottom of the reduction motor mechanism 5 is embedded and installed with the positioning mechanism 18. A pin hole 21 is also arranged on the rectangular frame 1. A strip-shaped groove 3-1 is arranged on the cylinder Ⅱ 3. An inner window Ⅰ 22 is embedded on the top surface of the rectangular frame 1. The rectangular frame 1 and the inner window Ⅰ 22 are connected by a folding leather sleeve Ⅰ 23. An inner window Ⅱ 24 is embedded on the bottom surface of the rectangular frame 1. The rectangular frame 1 and the inner window Ⅱ 24 are connected by a folding leather sleeve Ⅱ 25. The unfolded area of the folding leather sleeve Ⅱ 25 is larger than the unfolded area of the folding leather sleeve Ⅰ 23. A double track groove 26 is arranged inside the rectangular frame 1.
[0046] The plc integrated module 4 includes a WiFi module Ⅰ 27, a control main board 28, and a power supply and audio wiring port 29. The WiFi module Ⅰ 27 is arranged on the control main board 28. The power supply and audio wiring port 29 is arranged at the bottom of the cylinder Ⅰ 2 and is hermetically connected between the two. The connecting wire of the power supply and audio wiring port 29 is connected to the control main board 28.
[0047] The speed reduction motor mechanism 5 includes a mechanism housing 30, a storage power supply 31, a speed reduction motor 32, a WiFi module II 33, a receiving main board 34, a manual switch 35, a propeller 36, and an uncovered disc 37. The storage power supply 31, the WiFi module II 33, and the receiving main board 34 are arranged inside the housing 30. The manual switch 35 is arranged on the housing 30. The speed reduction motor 32 is fixedly arranged below the housing 30. A propeller 36 and an uncovered disc 37 are sleeved on the rotating shaft of the speed reduction motor 32. A group of vertical grooves 38 are arranged on the inner wall of the uncovered disc 37, and one end of the vertical groove 38 extends out of the uncovered disc 37. A positioning mechanism 18 is installed in the vertical groove 38. A group of L-shaped hanging plates 30-1 are arranged on the mechanism housing 30.
[0048] The scrolling screen assembly 16 includes a scrolling screen 16-1, a transparent elastic scroll plate 16-2, and an ultraviolet reflection coating 16-3. The side of the transparent elastic scroll plate 16-2 is fixedly connected to the side of the scrolling screen 16-1. The ultraviolet reflection coating 16-3 is coated on the back of the scrolling screen 16-1.
[0049] The positioning mechanism 18 includes a double-ring limit tube 39, a single-circle plate positioning pin 40, and a spring 41. The single-circle plate positioning pins 40 are oppositely installed inside the double-ring limit tube 39. The single-circle plate positioning pins 40 slide and are limited in the double-ring limit tube 39. Springs 41 are arranged between the single-circle plate positioning pins 40.
[0050] The open semi-cylindrical component 19 includes an arc plate I 42, an arc plate II 43, a circular cover plate 44, and a positioning groove-shaped carrier plate 45. The arc plate II 4 is arranged below the arc plate I 42. The circular cover plate 44 is arranged on the arc plate I 42. The positioning groove-shaped carrier plate 45 is horizontally installed on the inner wall of the arc plate I 42.
[0051] The working principle of the present invention during scene mimicry is as follows:
[0052] The inner window I 22 and the inner window II 24 are closed. A 220v conventional power cord and an audio cable are plugged into the power audio connection port 29. The 220v conventional power cord is plugged into a socket to connect the whole set of equipment to electricity. The remote control is operated, and the plc integrated module 4 transmits a signal to the speed reduction motor mechanism 5 to drive the rotating shaft 14 to rotate, so that the scrolling screen assembly 16 unfolds. The scrolling screen assembly 16 slides in the double-track grooves 26 arranged in the rectangular frame 1 until it abuts against the strip groove 3-1 of the cylinder II 3. The speed reduction motor 32 in the speed reduction motor mechanism 5 stops rotating. An external mobile phone or tablet projects the picture on the mobile phone or tablet onto the scrolling screen 16-1 through the plc integrated module 4. The ultraviolet reflection coating 16-3 coated on the back of the scrolling screen 16-1 can reflect ultraviolet rays and reduce the heat generation of the scrolling screen 16-1. At this time, the whole set of equipment and the mobile phone or tablet are in the same network. The image on the tablet or mobile phone is mirrored onto the scrolling screen assembly 16, and the desired scene can be mimicked, and the sound is emitted from the speaker. Embodiment 3
[0053] As Figure 19 - Figure 20 shown: A scene mimicking multi-functional window, comprising a rectangular frame 1, a cylinder Ⅰ 2, a cylinder Ⅱ 3, a PLC integrated module 4, a reduction motor mechanism 5, a remote control and a power cord. The PLC integrated module 4 is arranged inside the cylinder Ⅰ 2. A set of collar rings 6 are respectively arranged on both sides of the rectangular frame 1. A set of annular grooves 7 are respectively arranged on the cylinder Ⅰ 2 and the cylinder Ⅱ 3. The collar rings 6 are arranged inside the annular grooves 7. The cylinder Ⅰ 2 and the cylinder Ⅱ 3 rotate on both sides of the rectangular frame 1. It is characterized in that: strip-shaped slots Ⅰ 8 are arranged on both side edges of the rectangular frame 1, and sealing strips 9 are arranged on the strip-shaped slots Ⅰ 8. Alignment lines Ⅰ 10 and alignment lines Ⅱ 11 are arranged on both the cylinder Ⅰ 2 and the cylinder Ⅱ 3. A set of positioning square tubes 12 are embedded and installed on the tube wall of the cylinder Ⅱ 3. The cylinder Ⅱ 3 is a hollow cylinder. A reference line 13 is arranged on the collar ring 6. A rotating shaft 14 is arranged inside the cylinder Ⅰ 2. Bearing seals 15 are arranged at both ends of the rotating shaft 14. A scroll screen assembly 16 is sleeved outside the rotating shaft 14 and one side of the scroll screen assembly 16 is fixed to the rotating shaft 14. A strip-shaped slot Ⅱ 17 is arranged on the cylinder Ⅰ 2. The wiring terminal of the scroll screen assembly 16 enters the inside of the rotating shaft 14 and extends out of the rotating shaft 14. The wiring terminal of the PLC integrated module 4 is connected to the wiring terminal of the scroll screen assembly 16. A positioning mechanism 18 is horizontally installed at one end of the rotating shaft 14. An open semi-cylindrical component 19 is arranged on the cylinder Ⅰ 2. The reduction motor mechanism 5 is installed inside the open semi-cylindrical component 19. A cushion plate 20 is movably arranged inside the open semi-cylindrical component 19. The bottom of the reduction motor mechanism 5 is embedded and installed with the positioning mechanism 18. A pin hole 21 is further arranged on the rectangular frame 1. A strip-shaped groove 3-1 is arranged on the cylinder Ⅱ 3. An inner window Ⅰ 22 is embedded on the top surface of the rectangular frame 1. The rectangular frame 1 and the inner window Ⅰ 22 are connected by a folding leather sleeve Ⅰ 23. An inner window Ⅱ 24 is embedded on the bottom surface of the rectangular frame 1. The rectangular frame 1 and the inner window Ⅱ 24 are connected by a folding leather sleeve Ⅱ 25. The unfolded area of the folding leather sleeve Ⅱ 25 is larger than the unfolded area of the folding leather sleeve Ⅰ 23. A double track groove 26 is arranged inside the rectangular frame 1.
[0054] The PLC integrated module 4 includes a WiFi module Ⅰ 27, a control main board 28 and a power supply and audio wiring port 29. The WiFi module Ⅰ 27 is arranged on the control main board 28. The power supply and audio wiring port 29 is arranged at the bottom of the cylinder Ⅰ 2 and is hermetically connected therebetween. The connecting wire of the power supply and audio wiring port 29 is connected to the control main board 28.
[0055] The speed reduction motor mechanism 5 includes a mechanism housing 30, a storage power supply 31, a speed reduction motor 32, a WiFi module II 33, a receiving main board 34, a manual switch 35, a propeller 36, and an uncovered disc 37. The storage power supply 31, the WiFi module II 33, and the receiving main board 34 are arranged inside the housing 30. The manual switch 35 is arranged on the housing 30. The speed reduction motor 32 is fixedly arranged below the housing 30. A propeller 36 and an uncovered disc 37 are sleeved on the rotating shaft of the speed reduction motor 32. A group of vertical grooves 38 are arranged on the inner wall of the uncovered disc 37, and one end of the vertical grooves 38 extends out of the uncovered disc 37. A positioning mechanism 18 is installed in the vertical grooves 38. A group of L-shaped hanging plates 30-1 are arranged on the mechanism housing 30.
[0056] The scrolling screen assembly 16 includes a scrolling screen 16-1, a transparent elastic scroll plate 16-2, and an ultraviolet reflection coating 16-3. The side of the transparent elastic scroll plate 16-2 is fixedly connected to the side of the scrolling screen 16-1. The ultraviolet reflection coating 16-3 is coated on the back of the scrolling screen 16-1.
[0057] The positioning mechanism 18 includes a double-ring limit tube 39, a single-circle plate positioning pin 40, and a spring 41. The single-circle plate positioning pins 40 are oppositely installed inside the double-ring limit tube 39. The single-circle plate positioning pins 40 slide and are limited in the double-ring limit tube 39. Springs 41 are arranged between the single-circle plate positioning pins 40.
[0058] The open semi-cylindrical component 19 includes an arc plate I 42, an arc plate II 43, a round cover plate 44, and a positioning groove-shaped carrier plate 45. The arc plate II 43 is arranged below the arc plate I 42. The round cover plate 44 is arranged on the arc plate I 42. The positioning groove-shaped carrier plate 45 is horizontally installed on the inner wall of the arc plate I 42.
[0059] In case of extreme weather conditions, the working principle of the present invention is as follows:
[0060] When the flood is about to reach the lowest position of the window, first open the inward-opening window Ⅰ22. Press the four corners of the window frame of the inward-opening window Ⅱ24 forcefully respectively to make the folding leather sleeve Ⅱ25 unfold, forming a large cavity. Place some valuables inside. Then press the four corners of the window frame of the inward-opening window Ⅰ22 forcefully respectively to make the folding leather sleeve Ⅰ23 unfold, and close the inward-opening window Ⅰ22. At this time, the whole window forms a closed cavity. Use a hammer to knock off the bricks around the window and remove the whole window, which just falls on the water surface outside the house, forming an escape boat with a chamber, floating on the water surface. The people inside the house stand on the inward-opening window Ⅰ22 and push the cylinder Ⅰ2 and the cylinder Ⅱ3 respectively to align the initial alignment line Ⅰ10 with the reference line 13, and turn to the reference line 13 and the alignment line Ⅱ11. At this time, the strip-shaped slot Ⅱ17 on the cylinder Ⅰ2 and the strip-shaped groove 3-1 on the cylinder Ⅱ3 can be seen. First, press the manual switch 35 in the speed reduction motor mechanism 5, and the rolling screen assembly 16 pops out. Hold the rolling screen 16-1 with both hands and slowly pull out the rolling screen 16-1 until it is close to the cylinder Ⅱ3 and stop. Another person pulls out the backing plate 20 from the speed reduction motor mechanism 5 and the open semi-cylindrical component 19, and takes out the speed reduction motor mechanism 5 from the open semi-cylindrical component 19. One of the single circular plate positioning pins 40 of the positioning mechanism 18 pops out and presses on the rectangular body frame 1 but does not enter the pin hole 21 on the rectangular body frame 1. At this time, hang the taken-out speed reduction motor mechanism 5 in the positioning square tube 12, open the manual switch 35, and the speed reduction motor 32 drives the propeller 36 to rotate slowly to provide a forward thrust for the device itself. Further pull out the rolling screen 16-1, and the two cooperate to insert the rolling screen into the strip-shaped groove 3-1 on the cylinder Ⅱ3. At the same time of insertion, the single circular plate positioning pin 40 just enters the pin hole 21 of the rectangular body frame 1 to form a limit, forming an arched rain shelter, which can prevent rainwater from directly entering the cavity. The two cylinders Ⅰ2 and Ⅱ3 can provide buoyancy and prevent other items from directly hitting the device body, playing a buffering role. The transparent elastic rolling plate Ⅰ6-2 can observe the front environment, and sliding the water on the single side by hand can change the direction, so as to reach the safe area and be rescued quickly.
[0061] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A scene mimicking multi-functional window, comprising a rectangular frame (1), a cylinder I (2), a cylinder II (3), a plc integrated module (4), a reduction motor mechanism (5), a remote control and a power cord. The plc integrated module (4) is arranged inside the cylinder I (2). A set of collars (6) are respectively arranged on both sides of the rectangular frame (1). A set of annular grooves (7) are respectively arranged on the cylinder I (2) and the cylinder II (3). The collars (6) are arranged inside the annular grooves (7). The cylinder I (2) and the cylinder II (3) rotate on both sides of the rectangular frame (1). It is characterized in that: Strip-shaped seams Ⅰ (8) are provided on both sides of the rectangular body frame (1), and a sealing strip (9) is provided on the strip-shaped seams Ⅰ (8). Alignment lines Ⅰ (10) and alignment lines Ⅱ (11) are provided on both the cylinder Ⅰ (2) and the cylinder Ⅱ (3). A set of positioning square tubes (12) are embedded and installed on the tube wall of the cylinder Ⅱ (3). The cylinder Ⅱ (3) is a hollow cylinder. A reference line (13) is provided on the collar (6). A rotating shaft (14) is provided in the cylinder Ⅰ (2). Bearing seals (15) are provided at both ends of the rotating shaft (14). A scroll screen assembly (16) is sleeved outside the rotating shaft (14), and one side of the scroll screen assembly (16) is fixed to the rotating shaft (14). A strip-shaped seam Ⅱ (17) is provided on the cylinder Ⅰ (2). The wiring terminal of the scroll screen assembly (16) enters the inside of the rotating shaft (14) and extends out of the rotating shaft (14). The wiring terminal of the plc integrated module (4) is connected to the wiring terminal of the scroll screen assembly (16). A positioning mechanism (18) is horizontally installed at one end of the rotating shaft (14). An open semi-cylindrical component (19) is provided on the cylinder Ⅰ (2). The reduction motor mechanism (5) is installed in the open semi-cylindrical component (19). A backing plate (20) is movably provided in the open semi-cylindrical component (19). The bottom of the reduction motor mechanism (5) is embedded and installed with the positioning mechanism (18). A pin hole (21) is further provided on the rectangular body frame (1). A strip-shaped groove (3-1) is provided on the cylinder Ⅱ (3). An inner window Ⅰ (22) is embedded in the top surface of the rectangular body frame (1). The rectangular body frame (1) and the inner window Ⅰ (22) are connected by a folding leather sleeve Ⅰ (23). An inner window Ⅱ (24) is embedded in the bottom surface of the rectangular body frame (1). The rectangular body frame (1) and the inner window Ⅱ (24) are connected by a folding leather sleeve Ⅱ (25). The unfolded area of the folding leather sleeve Ⅱ (25) is larger than the unfolded area of the folding leather sleeve Ⅰ (23). A double-track groove (26) is provided inside the rectangular body frame (1).
2. The multifunctional window with scene mimicry according to claim 1, characterized in that: The plc integrated module (4) includes a WiFi module Ⅰ (27), a control main board (28), and a power supply and audio wiring port (29). The WiFi module Ⅰ (27) is provided on the control main board (28). The power supply and audio wiring port (29) is provided at the bottom of the cylinder Ⅰ (2) and is hermetically connected between them. The connecting wire of the power supply and audio wiring port (29) is connected to the control main board (28).
3. The multifunctional window with scenario mimicry according to claim 1, characterized in that: The speed reduction motor mechanism (5) includes a mechanism housing (30), a storage power supply (31), a speed reduction motor (32), a WiFi module II (33), a receiving main board (34), a manual switch (35), a propeller (36), and an uncovered disc (37). The storage power supply (31), the WiFi module II (33), and the receiving main board (34) are arranged inside the housing (30). The manual switch (35) is arranged on the housing (30). The speed reduction motor (32) is fixedly arranged below the housing (30). A propeller (36) and an uncovered disc (37) are sleeved on the rotating shaft of the speed reduction motor (32). A group of vertical grooves (38) are arranged on the inner wall of the uncovered disc (37), and one end of the vertical groove (38) extends out of the uncovered disc (37). A positioning mechanism (18) is installed in the vertical groove (38). A group of L-shaped hanging plates (30-1) are arranged on the mechanism housing (30).
4. The multifunctional window with scenario mimicry according to claim 1, characterized in that: The scrolling screen assembly (16) includes a scrolling screen (16-1), a transparent elastic rolling plate (16-2), and an ultraviolet reflection coating (16-3). The side of the transparent elastic rolling plate (16-2) is fixedly connected to the side of the scrolling screen (16-1). The ultraviolet reflection coating (16-3) is coated on the back of the scrolling screen (16-1).
5. The multifunctional window with scenario mimicry according to claim 3, characterized in that: The positioning mechanism (18) includes a double-ring limiting tube (39), a single-circle plate positioning pin (40), and a spring (41). The single-circle plate positioning pins (40) are oppositely installed inside the double-ring limiting tube (39). The single-circle plate positioning pins (40) slide and are limited in the double-ring limiting tube (39). Springs (41) are arranged between the single-circle plate positioning pins (40).
6. The multifunctional window with scenario mimicry according to claim 1, characterized in that: The open semi-cylindrical component (19) includes an arc plate I (42), an arc plate II (43), a circular cover plate (44), and a positioning groove-shaped carrier plate (45). The arc plate II (43) is arranged below the arc plate I (42). The circular cover plate (44) is arranged on the arc plate I (42). The positioning groove-shaped carrier plate (45) is horizontally installed on the inner wall of the arc plate I (42).
Citation Information
Patent Citations
All-weather energy-saving breathing window with air-vent control structure
CN102518374A
Photovoltaic shutter
CN110735591A